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表单
lyophilized
质量水平
比活
≥20,000 U/g
储存温度
2-8°C
InChI
1S/C11H9N3O2.Na/c15-8-4-5-9(10(16)7-8)13-14-11-3-1-2-6-12-11;/h1-7,16H,(H,12,14);/q;+1/b13-9-;
InChI key
QWZUIMCIEOCSJF-CHHCPSLASA-N
一般描述
米曲霉脂肪酶是一种羧酸酯酶,属于α/β-水解酶家族。它包含一个盖子结构域(lid domain)、铰链结构域(hinge domain)和一个催化三分子Ser?His?Asp/Glu。其三维结构是与酯酶非常相似的α/β水解酶折叠。
应用
来自米曲霉的脂肪酶已被用于:
- 三酰甘油 (TAG) 的部分消化
- 蓖麻油中(12-蓖麻油酰基蓖麻油酰基)二蓖麻油酰基甘油(RRRR)的消化
- 亚麻籽油的水解
生化/生理作用
脂肪酶催化单酰甘油和二酰甘油的水解,其活性受二价离子作用抑制。米曲霉脂肪酶是一种工业酶,可用于食品、洗涤剂和制药行业。它也被用于1,3-二油酸-2-棕榈酸甘油三酯(OPO)合成的固定化研究中。米曲霉脂肪酶有望用于以废食用油生产生物柴油。
制备说明
通过转基因米曲霉微生物深层发酵生产的纯化米曲霉1,3-特异性脂肪酶
法律信息
Novozyme corp. 的产品。
Palatase is a registered trademark of Novozymes Corp.
警示用语:
Danger
危险声明
预防措施声明
危险分类
Resp. Sens. 1
储存分类代码
11 - Combustible Solids
WGK
WGK 1
闪点(°F)
Not applicable
闪点(°C)
Not applicable
个人防护装备
Eyeshields, Gloves, type N95 (US)
法规信息
常规特殊物品
历史批次信息供参考:
分析证书(COA)
Lot/Batch Number
Purification and characterization of a lipase from Aspergillus oryzae
Toida J, et al.
Bioscience, Biotechnology, and Biochemistry, 59(7), 1199-1203 (1995)
Preliminary Investigation: Stearidonic Acid Production by Genetically Modified Saccharomyces cerreviseae Using Linseed Oil as A Fatty Acid Source
Muzakhar K
Jurnal Ilmu Dasar, 9(1), 8-Jan-8-Jan (2008)
Xianming Zhao et al.
Frontiers in microbiology, 10, 645-645 (2019-04-12)
Thraustochytrium is a marine protist that can accumulate a large amount of very long chain polyunsaturated fatty acids (VLCPUFA) in triacylglycerols (TAG). How these freshly synthesized VLCPUFAs are channeled into TAG remains unknown. In this study, the glycerolipid profile of
Jiann-Tsyh Lin et al.
Journal of agricultural and food chemistry, 56(10), 3616-3622 (2008-04-30)
(12-Ricinoleoylricinoleoyl)diricinoleoylglycerol (RRRR), a tetraacylglycerol, was identified earlier in castor oil. Using ESI-MS (4), 95% of the 12-ricinoleoylricinoleoyl chain was identified at the sn-2 position of the glycerol backbone of RRRR. Regiospecific location of the 12-ricinoleoylricinoleoyl chain of RRRR on the
Thais de Andrade Silva et al.
Scientific reports, 12(1), 6815-6815 (2022-04-28)
The use of enzymes immobilized on nanomagnetic supports has produced surprising results in catalysis, mainly due to the increase in surface area and the potential for recovery and reuse. However, the meticulous control of the process and difficulties in reproducibility
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